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Minggu, 08 Mei 2016

CCRES Algae Astaxanthin

Astaxanthins ability to scavenge free radicals in your body* is up to...

    550 times more powerful than vitamin E
    65 times more powerful than vitamin C
    54 times more powerful than beta-carotene
    5 times more powerful than lutein

CCRES ALGAE

It does this by quenching a molecule called singlet oxygen - a harmful reactive oxygen species formed through normal biological processes occurring in your body.* Singlet oxygen possesses a high amount of excess energy that must be released to keep it from damaging other cells.

CCRES Lab

Astaxanthin absorbs this energy and dissipates it as heat, thereby returning the singlet oxygen to a grounded state.*

Theres another way, too, that astaxanthin helps to protect cells, organs and tissues against oxidative damage from free radicals.*

CCRES Algae Astaxanthin

It traps free radicals at both ends of the molecule.* Once captured, the potentially harmful free radicals pass into cellular fluids where they become neutralized by vitamin C. In this way, astaxanthin is sometimes considered a ‘booster for other antioxidants like vitamins A, C and E.*


Whats more, astaxanthin cant act as a potentially detrimental “pro-oxidant” like some of the other carotenoids such as beta-carotene, lycopene, and zeaxanthin.


CCRES CO2

    Support your joint health, flexibility, and mobility*
    Support a healthy immune response*
    Support your central nervous system*
    Support your cardiovascular system*
    Support your brain and eye health due to its unique ability to cross blood-brain and blood-retina barriers*

CCRES ALGAE PROJECT
part of 
Croatian Center of Renewable Energy Sources (CCRES)

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Selasa, 26 April 2016

If you value what is presented in this movie, please go to http://thrivemovement.com/ where you can support Thrive Movement by making a donation. You will also find more in-depth information on each of the subjects discussed in the movie, learn about Critical Mass initiatives supported by Thrive, and connect with others who are waking up and taking action.

Film Synopsis:
THRIVE is an unconventional documentary that lifts the veil on whats REALLY going on in our world by following the money upstream -- uncovering the global consolidation of power in nearly every aspect of our lives. Weaving together breakthroughs in science, consciousness and activism, THRIVE offers real solutions, empowering us with unprecedented and bold strategies for reclaiming our lives and our future.
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Senin, 25 April 2016


  • The Green LoopThe Green Loop
  • Know Your SeaweedsKnow Your Seaweeds
  • Young Algae ResearcherYoung Algae Researcher
  • BFS Algae, in SpainBFS Algae, in Spain
  • Algae Research at MSUAlgae Research at MSU
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Jumat, 08 April 2016

Take advantage of your garden assets. Every garden has some strong points or the other. But most of the time people complain about what they are missing. There is no harm in improving your garden conditions, but it is also important and sometimes more fulfilling to utilize the prevailing conditions and use them to their full effect.

In this article we want to emphasize these points. Here are some of these garden conditions which bother people, and just how you can use them to your benefit.

  1. Too much sunlight:
    If your garden receives bright sunlight most of the time, you should consider yourself lucky. There are very few plants in this world which dont like bright sunlight. Most of the vegetables and fruit growing plants require at least six hours of direct sunlight ( check out Sun or No Sun for more information). Many bright-coloured flowers grow fantastically well under bright sunlight. You can choose variety of colours and combinations.
  2.  Lack of sunlight:
    If your garden conditions are just the opposite of the previous one i.e, you rarely receive bright sunlight; you dont need to worry. Consider this as an opportunity to create cool and soothing environment around. One of the major benefits of having a darker garden is that you dont need to worry about wilting of plants. It will provide a fresher look to your garden. Not every plant requires 6 hours of direct sunlight; grow leafy vegetables. Many flowers actually prefer dark environment and not the direct sunlight. More details about shade gardening is here in this article.
  3. Dry conditions:
    If your garden soil and surroundings are too dry, and you think it is not possible to grow anything; think again. These days, there are so many options available with growers that you dont even need to think about watering most of the time. Start from cacti and the option is endless. You might think this as a blessing in disguise. You can start with the nursery shops and ask for their help in selecting the plants; or you can use the Internet to research about this.
  4. Wet or soggy condition:
    Dont neglect these parts of the garden just because they are soggy and damp. Grow plants that love damp environments. This might look a little unconventional but it will help to redecorate your landscape. Skunk cabbage can be a good option for this type of environments. You can check this article for a detailed list of various plants for this kind of environment.
  5. Acidic soil:
    A soil pH lower than 6.5 is called acidic soil. Acidic soil is actually good for many plants. Potatoes, Strawberries, Radishes etc love acidic soil. You can also turn your empty acidic patch of land into a rose garden in case the soil is slightly acidic. Different types of fern also grows well in acidic soil.
  6. Alkaline soil:
    In contrast to the above, here the soil pH is 7.5 or more. Other than lowering the pH (which is always an option), you can also use the conditions to grow plants that are more suitable to grow in alkaline soil. Plants such as Sunflowers, Daisies, Leeks, Oranges are ideal for alkaline soil. You can also opt for plants like Maple is you have the required space.

These are just some of the examples. You can always use your creativity and gardening knowledge to create more such solutions.



What do you think about the article? Give your feedback using the comment box below. We would like to hear from you.
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Senin, 04 April 2016


The Lemnaceae, commonly known as duckweeds, are the smallest, fastest growing and simplest of flowering plants. Some of the current uses of Lemnaceae are a testimony to its utility: basic research and evolutionary model system, toxicity testing organism, biotech protein factory, wastewater remediator, high-protein animal feed, and carbon cycling participant. Sequencing of the Greater Duckweed, Spirodela polyrhiza (L.) Schleiden, which has a genome size similar to that of Arabidopsis (150 MB), will address challenges in alternative energy, bioremediation, and global carbon cycling. 

duckweed in a flask
Duckweed photo courtesy Todd Michael.

With the passage of the 2005 Federal Energy legislation, the drive to develop sustainable feedstocks and processing protocols for biofuel production has intensified. The search for new biomass species has revealed the potential of Lemnaceae species. These plants produce biomass faster than any other flowering plant. The carbohydrate content of the plant material also indicates a potential for ethanol production. Moreover, the carbohydrate in duckweed biomass is readily converted to fermentable sugars by using commercially available enzymes developed for corn-based ethanol production.
The utility of Lemnaceae species for bioremediation has long been recognized as well. Propagated on agricultural and municipal wastewater, Spirodela and related species efficiently extract excess nitrogen and phosphate pollutants. Duckweed growth on ponds effectively reduces algal growth (by shading), coliform bacterial counts, suspended solids, evaporation, biological oxygen demand, and mosquito larvae while maintaining pH, concentrating heavy metals, sequestering or degrading halogenated organic and phenolic compounds, and encouraging the growth of other aquatic animals such as frogs and fowl.
A better understanding of Lemnaceae species could also reveal the potential for their role in the global carbon cycle. Primitive aquatic plants have been implicated as the primary source of carbon sequestration that drove global climate change during the Early Eocene. The S. polyrhiza genome sequence could unlock the remarkable potential of a rapidly growing aquatic plant for carbon sequestration, carbon cycling, and biofuel production.

CCRES ALGAE
part of
Croatian Center of Renewable Energy Sources (CCRES)
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